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Persistence of Free-Living Protozoan Communities across Rearing Cycles in Commercial Poultry Houses

机译:商业家禽饲养场中各个饲养周期的原生动物社区的持久性

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The introduction and survival of zoonotic bacterial pathogens in poultry farming have been linked to bacterial association with free-living protozoa. To date, however, no information is available on the persistence of protozoan communities in these environments across consecutive rearing cycles and how it is affected by farm- and habitat-specific characteristics and management strategies. We therefore investigated the spatial and temporal dynamics of free-living protozoa in three habitats (pipeline, water, and miscellaneous samples) in three commercial poultry houses across three rearing cycles by using the molecular fingerprinting technique denaturing gradient gel electrophoresis (DGGE). Our study provides strong evidence for the long-term (ca. 6-month) persistence of protozoa in broiler houses across consecutive rearing cycles. Various free-living protozoa (flagellates, ciliates, and amoebae), including known vectors of bacterial pathogens, were observed during the down periods in between rearing cycles. In addition, multivariate analysis and variation partitioning showed that the protozoan community structure in the broiler houses showed almost no change across rearing cycles and remained highly habitat and farm specific. Unlike in natural environments, protozoan communities inside broiler houses are therefore not seasonal. Our results imply that currently used biosecurity measures (cleaning and disinfection) applied during the down periods are not effective against many protozoans and therefore cannot prevent potential cross-contamination of bacterial pathogens via free-living protozoa between rearing cycles.
机译:家禽养殖中人畜共患细菌病原体的引入和生存与细菌与自由生原虫的结合有关。然而,迄今为止,尚无关于原生动物群落在连续饲养周期中在这些环境中的持久性以及其如何受到农场和栖息地特定特征及管理策略的影响的信息。因此,我们使用变性梯度凝胶电泳(DGGE)分子指纹技术研究了三个饲养周期中三个商业家禽舍中三个栖息地(管道,水和其他样品)中自由生动物的时空动态。我们的研究为肉鸡舍中原生动物在连续饲养周期中的长期(约6个月)持久性提供了有力证据。在饲养周期之间的下降期,观察到各种自由活动的原生动物(鞭毛虫,纤毛虫和变形虫),包括已知的细菌病原体载体。此外,多变量分析和变异划分表明,肉鸡舍中的原生动物群落结构在整个饲养周期中几乎没有变化,并且仍然具有很高的生境和农场特异性。因此,与自然环境不同,肉鸡舍内的原生动物群落不是季节性的。我们的结果表明,目前在停机期间采用的生物安全措施(清洁和消毒)对许多原生动物无效,因此无法防止饲养周期之间通过自由活动原生动物对细菌病原体进行潜在的交叉污染。

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